2322 66. 5...2
Vishay BCcomponents
145 V PTC Thermistors For
Overload Protection
FEATURES
•
Wide range of trip and non-trip currents: from 47 mA up to
1 A for the trip current
•
Wide range of resistance: from 1.3
Ω
up to 240
Ω
•
Small ratio between trip and non-trip currents
(I
t
/I
nt
= 1.5 at 25 °C)
•
High maximum inrush current
•
Excellent long term behaviour, also in humidity
•
Leaded parts withstand mechanical stresses and vibration
•
UL file E148885 according to XGPU standard UL1434
•
UL approved PTCs are guaranteed to withstande severe
test programmes
• Long-life cycle tests (over 5000 trip cycles)
• Long-life storage tests (3000 hours at 250°C
• Electrical cycle tests at low ambient temperatures
(- 40°C or 0°C)
• Damp-heat and water immersion tests
• Overvoltage tests at up to 200% of rated voltage
APPLICATIONS
•
Telecommunications
•
Automotive systems
•
Industrial electronics
•
Consumer electronics
•
Electronic data processing.
DESCRIPTION
These directly heated thermistors have a positive
temperature coefficient and are primarily intended for
overload protection. They consist of a naked disc with two
tinned brass or copper clad steel leads and coated. Leadless
disks and leaded disks without coating are available on
request.
MOUNTING
QUICK REFERENCE DATA
PARAMETER
Switch temperature
Maximum voltage (RMS)
Temperature range
Climatic category
VALUE
140
145
0 to 70
25/125/56
UNIT
°C
V
°C
The PTC Thermistors are suitable for processing on
automatic insertion equipment.
Soldering
< 240 °C; duration < 5 s.
Resistamnce to heat
< 260 °C; duration < 5 s.
MARKING
Only the grey lacquered thermistors with a diameter of 8.5 to
20.5 mm are marked with BC, R25 value (example 1R9) on
one side and Int, V
max
on the other side.
Document Number: 29086
Revision: 03-Aug-04
For technical questions contact: nlr.europe@vishay.com
www.vishay.com
1
2322 66. 5...2
Vishay BCcomponents
145 V PTC Thermistors For
Overload Protection
ELECTRICAL DATA AND ORDERING INFORMATION
for 2322 66. 5...2; max. voltage = 145 V (ac or dc)
(1)
I
nt
MAX.
at 25
°
C
(mA)
47
65
93
110
130
170
210
250
270
320
360
410
450
600
710
880
1000
I
t
MIN.
at 25
°
C
(mA)
70
100
140
165
195
255
315
375
405
480
540
615
675
900
1065
1320
1500
R
25
±
20%
(
Ω
)
240
115
55
40
28
19
12
9.4
8
6.7
5.3
4.6
3.8
2.9
2.1
1.7
1.3
I
(2)
MAX.
at 25
°
C
(mA)
200
300
450
500
600
1000
1400
2000
2200
3000
3500
4500
5000
7200
8500
11000
13000
I
res
MAX.
at V
max
and 25
°
C
(mA)
9
11
13
13
13
15
15
16.5
16.5
19
19
22.5
22.5
28.5
28.5
37.5
37.5
CATALOG NUMBERS
DISSIP.
FACTOR
(mW/K)
7.3
7.3
7.3
7.3
7.3
8.3
8.3
9
9
10.5
10.5
11.7
11.7
15.5
15.5
19.8
19.8
∅
D
MAX.
(mm)
5
5
5
5
5
7
7
8.5
8.5
10.5
10.5
12.5
12.5
16.5
16.5
20.5
20.5
BULK
TAPE ON REEL
2322 660 54792
2322 660 56592
2322 660 59392
2322 660 51112
2322 660 51312
2322 661 51712
2322 661 52112
2322 661 52512
2322 661 52712
2322 662 53212
2322 662 53612
2322 662 54112
2322 662 54512
2322 663 56012
2322 663 57112
2322 664 58812
2322 664 51022
2322 660 64792
2322 660 66592
2322 660 69392
2322 660 61112
2322 660 61312
2322 661 61712
2322 661 62112
2322 661 62512
2322 661 62712
2322 662 63212
2322 662 63612
2322 662 64112
2322 662 64512
-
-
-
-
Notes
1. The thermistors are clamped at the seating plane.
2. I
max
is the maximum overload current that may flow through the PTC when it passes from the low ohmic to the high ohmic state
UL approval: I
max
*0.8
ELECTRICAL CHARACTERISTICS
I
MAX
AS A FUNCTION OF VOLTAGE.
250
%
200
It
150
I nt
100
I max
50
0
50
25
0
25
50
75
T amb (
o
C)
100
www.vishay.com
2
For technical questions contact: nlr.europe@vishay.com
Document Number: 29086
Revision: 03-Aug-04
2322 66. 5...2
145 V PTC Thermistors For
Overload Protection
CURRENT DEVIATION AS A FUNCTION OF
THE AMBIENT TEMPERATURE.
Vishay BCcomponents
200
I
max
(%)
150
100
80
0
40
50
70
100
120
150
V
rated
(%)
I
max
as stated in the Electrical data and ordering information tables, is the maximum overload current that may flow through the
PTC when passing from the low ohmic to high ohmic state at rated voltage.
When other voltages are present after tripping, the I
max
value can be derived from the above I
max
as a function of voltage graph.
Voltages below V
rated
will allow higher overload currents to pass the PTC.
COMPONENTS OUTLINE, PACKAGING AND CATALOG NUMBERS
CODE NUMBER
2322
660
661
5...2
6...2
5...2
6...2
5...2
662
663
664
64112 - 64512
6...2
5...2
5...2
PACKAGING
S.P.Q
500
3000
250
3000
200
1500
3000
100
100
P.Q.
2000
6000
2000
6000
2000
6000
6000
800
400
OUTLINE
Fig. 1a, 1b
Fig. 1c, 1d
Fig. 1a, 1b
Fig. 1c, 1d
Fig. 1a, 1b
Fig. 1e, 1f
Fig. 1c, 1d
Fig. 1a
Fig. 1a
PTC THERMISTORS IN BULK
D
D
T
H3
H2
H3
H2
F
L1
d
Leaded8-1.vsd
L1
d
F
Fig. 1a
Document Number: 29086
Revision: 03-Aug-04
For technical questions contact: nlr.europe@vishay.com
Fig. 1b
Leaded8-2.vsd
www.vishay.com
3
2322 66. 5...2
Vishay BCcomponents
145 V PTC Thermistors For
Overload Protection
PTC THERMISTORS ON TAPE ON REEL
P
D
T
P
P
h
h
P
D
P
P
h
T
h
H4
H3
H2
H3
d
W2
W0 W1 W
H0 H1
H4
a
H2
L
d
W2
W0 W1 W
a
H0 H1
L
P0
P1
F
D0
P0
P1
F
T
D0
T
t
t
Taped1.vsd
Taped6.vsd
Fig. 1c
Fig. 1d
P'
T
P
P
h
h
P'
D
P
P
h
T
h
D
H3
H4
d
W2
L
W0 W1 W
H0 H1
H2
H4
d
W2
L
W0 W1 W H0 H1
H3
H2
P0
P1
F
T
D0
P0
P1
F
D0
T
t
Fig. 1e
Fig. 1f
TAPE AND REEL ACCORDING TO IEC60286-2
dimensions in millimeters
SYMBOL
<
α
D
d
D0
F
H0
H2
H3
H4
∆
h
L1
T
t
PARAMETER
seating plane angle
body diameter
lead diameter
feed hole diameter
lead to lead distance
lead wire clinch height
component bottom to seating plane
component top to seating plane
seating plane difference
(left-right lead)
component alignment
lead length
total thinkness
total tape thickness
DIMENSIONS
15°
see table
0.6
4.0
5.0
16.0
4.0
D+5
0
0
20
5.0
0.9
TOLERANCE
± 5.0°
max
± 10 %
± 0.2
+ 0.6
- 0.1
± 0.5
± 1.0
max.
± 0.2
± 2.0
min.
max.
max.
with cardboard tape
0.5 ± 0.1
Document Number: 29086
Revision: 03-Aug-04
guaranteed between
component and tape
REMARKS
www.vishay.com
4
For technical questions contact: nlr.europe@vishay.com
2322 66. 5...2
145 V PTC Thermistors For
Overload Protection
REEL SPECIFICATIONS
in millimeters
REEL DIMENSIONS
in millimeters
DIAMETER
∅
3
Vishay BCcomponents
W
1
42
±
1
46
±
1
W
2
MAX.
56
60
<12
18
12
30
+1
-0
77
85.6
92
356
max.
22.5
W
1
W
2
TYPICAL RESISTANCE/TEMPERATURE
CHARACTERISTIC
for 2322 660 .4792
1,0E+08
TYPICAL RESISTANCE/TEMPERATURE
CHARACTERISTIC
for 2322 660 .6592
1,0E+07
1,0E+07
1,0E+06
1,0E+06
R [Ohm]
R [Ohm]
1,0E+05
1,0E+05
1,0E+04
1,0E+04
1,0E+03
1,0E+03
1,0E+02
1,0E+02
25
50
75
100
125
150
175
200
225
1,0E+01
25
50
75
100
125
150
175
200
225
TEMP. [°C]
Low voltage
205 Vpulsed
TEMP. [°C]
Low voltage
205 Vpulsed
TYPICAL RESISTANCE/TEMPERATURE
CHARACTERISTIC
for 2322 660 .9392
1,0E+06
TYPICAL RESISTANCE/TEMPERATURE
CHARACTERISTIC
for 2322 660 .1112
1,0E+06
1,0E+05
1,0E+05
R [Ohm]
1,0E+04
1,0E+04
R [Ohm]
1,0E+03
1,0E+03
1,0E+02
1,0E+02
1,0E+01
25 50
75
100 125 150
TEMP. [°C]
Low voltage
175
200
225
1,0E+01
25
50
75
100 125 150
TEMP. [°C]
Low voltage
205 Vpulsed
175
200
225
205 Vpulsed
Document Number: 29086
Revision: 03-Aug-04
For technical questions contact: nlr.europe@vishay.com
www.vishay.com
5